Manipulating neuronal activity in the mouse brain with ultrasound: A comparison with optogenetic activation of the cerebral cortex.
Authors: Moore ME, Loft JM, Clegern WC, Wisor JP
Low-intensity focused ultrasound induces neuronal activation via mechanisms that remain to be elucidated. We recorded local field potential fluctuations in the motor cortex in response to ultrasound stimulation of the somatosensory barrel cortex, comparing them to those recorded in response to optogenetic stimulation of interneurons and pyramidal neurons of the somatosensory cortex in the same animals. Comparison of the waveform produced by ultrasound stimulation to those produced by optogenetic stimulation revealed similarities between ultrasound-induced responses and optogenetically-induced responses to pyramidal cell stimulation, but not interneuron stimulation, which may indicate that ultrasound stimulation is mediated by excitation of cerebral cortical pyramidal neurons. Comparison of post mortem evoked responses to responses in living tissue confirmed the necessity for excitable tissue in the evoked response. Collectively, these experiments demonstrate an excitation-dependent response to low-frequency transdural ultrasound stimulation of cerebral cortical neuronal activity.
Introduction
Purpose
Transcranial ultrasound stimulation
Study Objective
To determine whether low-intensity focused ultrasound activates cortical pyramidal neurons (rather than interneurons) and requires excitable tissue by comparing ultrasound-evoked local field potentials with optogenetic stimulation of identified neuronal types.
Targeted brain region(s)
Somatosensory Barrel Cortex
Cargo name and characteristics
Optogenetic actuator — light-sensitive ion channel (opsin) protein expressed in cortical interneurons and pyramidal neurons (protein)
Outcomes and Safety
Summary of Outcomes
Low-intensity, low-frequency transdural focused ultrasound evoked excitation-dependent neuronal activation of cortical pyramidal neurons (but not interneurons), producing local field potential responses that required live excitable tissue.
Safety-related matter
The provided text does not mention any safety concerns, adverse effects, or related observations regarding the ultrasound or optogenetic stimulation.
Brain Region
Ultrasound Parameters
Focal Characteristics
Focal depth: None; Focal length: None; Aperture size: None
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